Under the influence of super weak electromagnetic emission (SWEME) the water changes its physical properties and becomes able to have the same effect on biological object as well as the substance which SWEME was used. Up today, there is no understanding of mechanisms of these phenomena, and there are no theoretical basics for the observed results. The core problem concerns the precision with which measurement on quantum resonant systems can be used to estimate quantities that appear as classical parameters in the theory, for example time, displacement, rotation, external fields, etc. The CICT EPG-IPG approach can minimize the traditional multiscale statistic modeling veil opacity. It brings classical and quantum information theory together in a single, effective pre-spatial geometro-arithmetic framework.

From Quantum Sensing to SWEME Interaction Modeling

Fiorini, Rodolfo A.
2017-01-01

Abstract

Under the influence of super weak electromagnetic emission (SWEME) the water changes its physical properties and becomes able to have the same effect on biological object as well as the substance which SWEME was used. Up today, there is no understanding of mechanisms of these phenomena, and there are no theoretical basics for the observed results. The core problem concerns the precision with which measurement on quantum resonant systems can be used to estimate quantities that appear as classical parameters in the theory, for example time, displacement, rotation, external fields, etc. The CICT EPG-IPG approach can minimize the traditional multiscale statistic modeling veil opacity. It brings classical and quantum information theory together in a single, effective pre-spatial geometro-arithmetic framework.
2017
Proceedings of the 2nd International Conference on Applied Physics, System Science and Computers (APSAC 2017)
quantum eld theory, external phase, internal phase, sweme, water quantum resonance, resonant control theory, IPG, EPG, CICT
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1037234
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